Sharp three-dimensional notches under combined nominal normal and shear fatigue loading

M. Vormwald, E. Shams
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Abstract

Many engineering structures are exposed to non-proportional fatigue loading. However, at the critical location of crack initiation, often only one of the load sequences dominates – the individual load cases result in different crack initiation sites. Based on engineering judgment a simplified local uniaxial or proportional loading situation may be assessed. In general, the critical location must be identified by calculating fatigue lives for a variety of locations. The position of the critical location depends on the hypothesis applied for life calculation – besides loading, geometry, material and many other influence factors. For sharp three-dimensional notches the region for the search of the critical location may be restricted considerably. Weld start and stop points are an industrial example for such sharp notches. They are the object of the present investigation. They are exposed to nominal normal and shear loading. The individual hot spots for crack initiation lie necessarily close together. A strong interaction of the loading cases for both proportional and non-proportional loading was experimentally observed. In the numerical investigation notch stresses were calculated using an idealised weld end model. Based on the critical plane approach according to Findley, numerical interaction lines were produced.
在联合名义法向和剪切疲劳载荷下的尖锐的三维缺口
许多工程结构承受非比例疲劳载荷。然而,在裂纹起裂的关键位置,往往只有一种荷载序列占主导地位,不同的荷载情况导致不同的裂纹起裂位置。根据工程判断,可以评估简化的局部单轴或比例加载情况。一般来说,必须通过计算各种位置的疲劳寿命来确定临界位置。除了载荷、几何形状、材料和许多其他影响因素外,关键位置的位置取决于寿命计算所采用的假设。对于尖锐的三维凹痕,搜索临界位置的区域可能受到相当大的限制。焊接开始点和停止点是这种尖锐缺口的工业例子。他们是本次调查的对象。它们暴露在名义的正常和剪切载荷下。裂纹起裂的单个热点必然靠近在一起。实验结果表明,在比例加载和非比例加载情况下,加载情况之间存在较强的相互作用。在数值研究中,采用理想焊接端模型计算缺口应力。基于Findley的临界平面法,得到了数值相互作用线。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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